Surgeons as Educators A Guide for Academic Development and Teaching Excellence

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  1. Stefanidis D, et al. Skill retention following proficiency-based laparoscopic simulator training.
    Surgery. 2005;138(2):165–70.

  2. Hiemstra E, et  al. Retention of basic laparoscopic skills after a structured training program.
    Gynecol Surg. 2009;6(3):229–35.

  3. Intuitive Surgical Inc. da Vinci Residency & Fellowship Training Program. 2016. 12 Oct 2016.

  4. Ramos P, et al. Face, content, construct and concurrent validity of dry laboratory exercises for
    robotic training using a global assessment tool. BJU Int. 2014;113(5):836–42.

  5. Simulated Surgical Systems LLC. RoSS II robotic surgery simulator; 2017. 3/14/2017.

  6. DiMaio S, Hasser C. The da Vinci research interface. In: MICCAI Workshop on Systems and
    Arch. for Computer Assisted Interventions, Midas Journal; 2008.

  7. Kumar R, et al. Assessing system operation skills in robotic surgery trainees. Int J Med Robot.
    2012;8(1):118–24.

  8. Lin HC, et al. Towards automatic skill evaluation: detection and segmentation of robot-assisted
    surgical motions. Comput Aided Surg. 2006;11(5):220–30.

  9. McDonough PS, et al. Initial validation of the ProMIS surgical simulator as an objective mea-
    sure of robotic task performance. J Robot Surg. 2011;5(3):195–9.

  10. Brand TC. Educational curricula, simulation, and skills assessment for the da Vinci platform,
    in Society of Government Service Urologists, San Diego. 2015.

  11. Jonsson MN, et al. ProMIS can serve as a da Vinci(R) simulator – a construct validity study. J
    Endourol. 2011;25(2):345–50.

  12. Tausch TJ, et  al. Content and construct validation of a robotic surgery curriculum using an
    electromagnetic instrument tracker. J Urol. 2012;188(3):919–23.

  13. Chmarra MK, et al. The influence of experience and camera holding on laparoscopic instrument
    movements measured with the TrEndo tracking system. Surg Endosc. 2007;21(11):2069–75.

  14. D’Angelo A-LD, et al. Idle time: an underdeveloped performance metric for assessing surgical
    skill. Am J Surg. 2015;209(4):645–51.

  15. Crochet P, et al. Development of an evidence-based training program for laparoscopic hyster-
    ectomy on a virtual reality simulator. Surg Endosc. 2017; 31(6):2474-2482.

  16. Martin JA, et al. Objective structured assessment of technical skill (OSATS) for surgical resi-
    dents. Br J Surg. 1997;84:273–8.

  17. Gallagher AG, et  al. Objective structured assessment of technical skills and checklist scales
    reliability compared for high stakes assessments. ANZ J Surg. 2014;84(7–8):568–73.

  18. Datta V, et  al. The surgical efficiency score: a feasible, reliable, and valid method of skills
    assessment. Am J Surg. 2006;192(3):372–8.

  19. Dath D, et al. Toward reliable operative assessment: the reliability and feasibility of videotaped
    assessment of laparoscopic technical skills. Surg Endosc. 2004;18(12):1800–4.

  20. Vassiliou MC, et  al. A global assessment tool for evaluation of intraoperative laparoscopic
    skills. Am J Surg. 2005;190(1):107–13.

  21. Kramp KH, et al. Validity and reliability of global operative assessment of laparoscopic skills (GOALS)
    in novice trainees performing a laparoscopic cholecystectomy. J Surg Educ. 2015;72(2):351–8.

  22. Gumbs AA, Hogle NJ, Fowler DL.  Evaluation of resident laparoscopic performance using
    global operative assessment of laparoscopic skills. J Am Coll Surg. 2007;204(2):308–13.

  23. Hogle NJ, et  al. Evaluation of surgical fellows’ laparoscopic performance using Global
    Operative Assessment of Laparoscopic Skills (GOALS). Surg Endosc. 2014;28(4):1284–90.

  24. Vassiliou MC, et  al. Evaluating intraoperative laparoscopic skill: direct observation versus
    blinded videotaped performances. Surg Innov. 2007;14(3):211–6.

  25. Chang L, et al. Reliable assessment of laparoscopic performance in the operating room using
    videotape analysis. Surg Innov. 2007;14(2):122–6.

  26. Watanabe Y, et al. Psychometric properties of the Global Operative Assessment of Laparoscopic
    Skills (GOALS) using item response theory. Am J Surg. 2016;213(2):273–6.

  27. Goh AC, et al. Global evaluative assessment of robotic skills: validation of a clinical assess-
    ment tool to measure robotic surgical skills. J Urol. 2012;187(1):247–52.

  28. Hung AJ, et al. Comparative assessment of three standardized robotic surgery training meth-
    ods. BJU Int. 2013;112(6):864–71.


5 Performance Assessment in Minimally Invasive Surgery

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